会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • REDOX POLYMERIZATION OF VINYL AROMATIC MONOMERS BY PHOTOSYNTHESIS
    • 光致合成乙烯基芳香族单体的氧化还原聚合
    • WO2007018995A2
    • 2007-02-15
    • PCT/US2006/028127
    • 2006-07-19
    • FINA TECHNOLOGY, INC.SOSA, JoseREIMERS, Jay
    • SOSA, JoseREIMERS, Jay
    • C08F2/50
    • C08F2/48C08F112/08C08F279/02C08F212/08
    • A method for the production of a vinyl aromatic polymer through the use of a supported light-induced photoreductant. A reactor is provided which contains a catalyst bed comprising a light-induced photoreductant component supported on a particulate substrate forming a permeable catalyst bed. A reaction stream comprising a vinyl aromatic monomer, a soluble reductant, and a transition metal salt is introduced into the reactor and passed through the catalyst bed. In addition, a gaseous oxidizing agent is introduced into the reactor and flowed through the catalyst bed and into contact with the reaction stream. The catalyst bed is irradiated with electromagnetic radiation in the ultraviolet or visible light range at an intensity sufficient to activate the photoreductant component and produce a free radical to initiate polymerization of the vinyl aromatic monomer to form a corresponding vinyl aromatic polymer. The vinyl aromatic polymer is then recovered from the reactor. The photoreductant component is a photoreductant dye, such as a group consisting of acridine, methylene blue, rose bengal, tetraphenylporphine, A protoporphyrin, A phthalocyanine and eosin-y and erythrosin-b. The transition metal salt may be an iron, cobalt or manganese salt and the soluble reductant is selected from the group consisting of diethanolamine, thiodiethanol, triethanolamine, benzoin, ascorbic acid, ester, glyoxal trimer and toluene sulfinic acid.
    • 通过使用负载型光诱导光还原剂生产乙烯基芳族聚合物的方法。 提供一种反应器,其含有催化剂床,所述催化剂床包含承载在颗粒基材上的光诱导的光致还原剂组分,形成可渗透催化剂床。 将包含乙烯基芳族单体,可溶性还原剂和过渡金属盐的反应物流引入反应器并通过催化剂床。 另外,将气态氧化剂引入反应器并流过催化剂床并与反应物流接触。 用足以激活光还原剂组分的强度的紫外或可见光范围的电磁辐射照射催化剂床,并产生自由基引发乙烯基芳族单体聚合形成相应的乙烯基芳族聚合物。 然后从反应器中回收乙烯基芳族聚合物。 光还原剂组分是光致还原剂染料,例如由吖啶,亚甲蓝,玫瑰红,四苯基卟吩,A原卟啉,酞菁和伊红-y以及赤藓红-b组成的组。 过渡金属盐可以是铁盐,钴盐或锰盐,可溶性还原剂选自二乙醇胺,硫代二乙醇,三乙醇胺,安息香,抗坏血酸,酯,乙二醛三聚体和甲苯亚磺酸。
    • 3. 发明申请
    • STYRENIC POLYMER COMPOSITIONS AND METHODS OF MAKING AND USING SAME
    • STYRENIC聚合物组合物及其制备方法和使用方法
    • WO2010088051A1
    • 2010-08-05
    • PCT/US2010/020977
    • 2010-01-14
    • FINA TECHNOLOGY, INC.SHULER, JoeSOSA, Jose
    • SHULER, JoeSOSA, Jose
    • C08F2/00
    • C08F6/005C08J9/0052C08J9/0066C08J9/0095C08J9/141C08J9/16C08J2201/03C08J2203/14C08J2325/06C08J2325/08C08L25/04
    • A method comprising contacting a first styrenic polymer composition comprising residual styrene monomer with a molecular sieve, and recovering a second styrenic polymer composition comprising a reduced amount of residual styrene monomer A composition compπsing a styrenic polymer having a residual styrene monomer amount of less than 100 ppm produced by contacting a styrenic polymer composition having a residual styrene monomer amount of equal to or greater than 100 ppm with a molecular sieve, and recovering the styrenic polymer having a residual styrene monomer amount of less than 100 ppm A method comprising providing a styrenic polymer composition having a residual styrene monomer amount of equal to or greater than 100 ppm, contacting the styrenic polymer composition with a molecular sieve, adding a nucleating agent, a foaming agent, and a coloring agent, and forming an expanded styrenic polymer composition having a residual styrene monomer amount of less than 100 ppm
    • 一种方法,包括使包含残余苯乙烯单体的第一苯乙烯聚合物组合物与分子筛接触,并回收包含减少量的残余苯乙烯单体的第二苯乙烯聚合物组合物压缩苯乙烯单体含量小于100ppm的苯乙烯聚合物的组合物 通过使具有等于或大于100ppm的残余苯乙烯单体量的苯乙烯类聚合物组合物与分子筛接触,并回收苯乙烯单体含量小于100ppm的苯乙烯类聚合物而制备的方法包括提供苯乙烯类聚合物组合物 具有等于​​或大于100ppm的残余苯乙烯单体量,使苯乙烯聚合物组合物与分子筛接触,加入成核剂,发泡剂和着色剂,并形成具有残余苯乙烯的膨胀苯乙烯聚合物组合物 单体量小于100ppm
    • 7. 发明申请
    • IN-SITU PREPARATION OF HYDROPEROXIDE FUNCTIONALIZED RUBBER
    • WO2006124298A3
    • 2006-11-23
    • PCT/US2006/017039
    • 2006-05-04
    • FINA TECHNOLOGY, INC.REIMERS, JaySOSA, Jose
    • REIMERS, JaySOSA, Jose
    • C08J3/28
    • [0035] A process for the preparation of a hydroperoxide functionalized rubber compound by the conversion of triplet state oxygen to singlet state oxygen in the presence of oxygen and a light-induced photoreductant. A dispersion of an unsaturated rubber component in a carrier solvent is introduced into a reactor containing a permeable catalyst bed comprising a light-induced photoreductant component supported on a particulate substrate component and passed through the catalyst bed. A gaseous oxidizing agent is passed through the catalyst bed in contact with the rubber-containing dispersion. The catalyst bed is irradiated with electromagnetic light radiation in the ultraviolet or visible light range at an intensity sufficient to convert triplet oxygen in the oxygenated rubber component to singlet oxygen. The oxygenated rubber component is then recovered from the reactor. The reactor can comprise a tubular outer shell and a tubular inner member having a permeable wall defining an annular space containing photoreductant-supported substrate material. The oxidizing agent is introduced into the inner member and radially dispersed outward from this member into contact with the supported photoreductant. The solvent rubber component is concurrently passed into contact with the catalyst bed.
    • 9. 发明申请
    • METHODS OF MAKING HIGH IMPACT POLYSTYRENE
    • 制备高冲击聚苯乙烯的方法
    • WO2012058055A1
    • 2012-05-03
    • PCT/US2011/056652
    • 2011-10-18
    • FINA TECHNOLOGY, INC.SUN, LikuoSOSA, JoseEON, SergeCORLETO, CarlosCOOPER, Scott
    • SUN, LikuoSOSA, JoseEON, SergeCORLETO, CarlosCOOPER, Scott
    • C08F257/00C08F279/00
    • C08F2/001C08F212/08C08F279/02C08L9/06C08L2555/84
    • The abstract was not in accordance with PCT Rule 8.1 (b) because it was more than 150 words in length. The abstract has been established by this Authority to read as follows: A process for producing high impact polystyrene including feeding at least one vinyl aromatic monomer; an elastomer, and a free radical initiator to a first linear flow reactor to form a reaction mixture. Polymerizing the reaction mixture in the first linear flow reactor to a point below the point at which phase inversion occurs to produce a first polymerization mixture and feeding the first polymerization mixture from the first linear flow reactor to a second linear flow reactor. Polymerizing the reaction mixture in the second linear flow reactor to at least a phase inversion point of the mixture to produce a second polymerization mixture and feeding the second polymerization mixture from the second linear flow reactor to at least a third linear flow reactor for post.inversion polymerization of the second polymerization mixture.
    • 摘要与PCT规则第8.1(b)条不符,因为它的长度超过150个字。 本局已建立摘要如下:一种生产高抗冲聚苯乙烯的方法,包括进料至少一种乙烯基芳族单体; 弹性体和自由基引发剂加入到第一线性流动反应器中以形成反应混合物。 将第一线性流动反应器中的反应混合物聚合到低于发生相转移点的点以产生第一聚合混合物并将第一聚合混合物从第一线性流动反应器进料到第二线性流动反应器。 将第二线性流动反应器中的反应混合物聚合成混合物的至少相转变点,以产生第二聚合混合物,并将第二聚合混合物从第二线性流动反应器进料至至少第三线性流动反应器用于反应 第二聚合混合物的聚合。
    • 10. 发明申请
    • POLYSTYRENE NANOCOMPOSITES FOR BLOW MOLDING APPLICATIONS
    • 用于吹塑成型应用的聚苯乙烯纳米复合材料
    • WO2011011148A1
    • 2011-01-27
    • PCT/US2010/039889
    • 2010-06-25
    • FINA TECHNOLOGY, INC.SUN, LuyiSOSA, JoseAGUIRRE, JuanLELAND, MarkHARRIS, Ted
    • SUN, LuyiSOSA, JoseAGUIRRE, JuanLELAND, MarkHARRIS, Ted
    • B29C49/00
    • C08K9/04B29C49/0005B29C49/06B29D22/003B29K2025/00B29K2105/162Y10T428/1352Y10T428/1397
    • Disclosed is a polystyrene based polymer/layered compound nanocomposite for injection blow molding or injection stretch blow molding of articles. The nanocomposite can reduce shrinkage and warpage to the preform during the reheating process compared to neat polystyrene. The incorporation of layered compounds can increase the processability of PS preforms, help improve heating efficiency, and improve bottle mechanical properties. The layered compound can be treated with chemicals or compounds having an affinity with the styrene monomer or polystyrene, thus producing a treated layered compound having an affinity with the styrene monomer or polystyrene. The monomer and the layered compound can be combined prior to polymerization. The polymer and layered compound can be combined by solution mixing in a solvent. The layered compound can also be incorporated into the mixture by compounding a polymer product with the layered compound, or the combination of any of the above three approaches.
    • 公开了用于注射吹塑或注射拉伸吹塑成型的聚苯乙烯基聚合物/层状化合物纳米复合材料。 与纯聚苯乙烯相比,纳米复合材料可以在再加热过程中减少预成型件的收缩和翘曲。 结合层状化合物可以增加PS预制件的加工性能,有助于提高加热效率,并提高瓶子的机械性能。 层状化合物可以用与苯乙烯单体或聚苯乙烯具有亲和性的化学物质或化合物进行处理,从而产生与苯乙烯单体或聚苯乙烯具有亲和性的经处理的层状化合物。 单体和层状化合物可以在聚合之前进行组合。 聚合物和层状化合物可以通过在溶剂中的溶液混合来组合。 层叠的化合物也可以通过将聚合物产物与层状化合物混合,或通过上述三种方法中的任何一种的组合而引入混合物中。